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    • 61. 发明授权
    • Power supply circuit
    • 电源电路
    • US07642761B2
    • 2010-01-05
    • US12256861
    • 2008-10-23
    • Yoshikazu SasakiIsao YamamotoMasao Yonemaru
    • Yoshikazu SasakiIsao YamamotoMasao Yonemaru
    • G05F1/00
    • G05F1/56H02M1/08H02M1/32
    • A power supply circuit includes a standard voltage generator; a regulator to control an output voltage, and to be capable of being switched ON/OFF; a capacitor in parallel between the standard voltage generator and the regulator; a discharging circuit including a first switch and a second switch configured to discharge electrical charges from the capacitor via the second switch while the regulator is in an OFF state; and a starting controller configured to transmit a signal for controlling the first switch and the second switch. The first switch is connected in series between the standard voltage generator and the regulator. The second switch has one end connected to a connection node between the first switch and the regulator, and has another end connected to a ground. When the first switch is in OFF state, the second switch is turned to ON state while the regulator is in OFF state.
    • 电源电路包括标准电压发生器; 用于控制输出电压并且能够被接通/断开的调节器; 在标准电压发生器和调节器之间并联的电容器; 放电电路,包括第一开关和第二开关,所述第二开关被配置为在所述调节器处于OFF状态时经由所述第二开关从所述电容器放电电荷; 以及启动控制器,被配置为发送用于控制所述第一开关和所述第二开关的信号。 第一个开关串联在标准电压发生器和调节器之间。 第二开关的一端连接到第一开关和调节器之间的连接节点,另一端连接到地。 当第一开关处于OFF状态时,第二开关在调节器处于OFF状态时转为ON状态。
    • 67. 发明申请
    • Switching Regulator Control Circuit, Current Drive Circuit, Light Emitting Apparatus, and Information Terminal Apparatus
    • 开关稳压器控制电路,电流驱动电路,发光装置和信息终端装置
    • US20070296353A1
    • 2007-12-27
    • US11792033
    • 2005-10-26
    • Tomoyuki ItoIsao Yamamoto
    • Tomoyuki ItoIsao Yamamoto
    • G05F1/00G06F1/16H05B39/04
    • H05B33/0818G09G3/3413H02M3/156H05B33/0827
    • A control circuit may include a first feedback input terminal which receives the cathode terminal voltage of light-emitting elements from a current driving circuit as a feedback signal. Such an arrangement controls the ON/OFF state of a switching element such that the cathode terminal voltage approaches a predetermined voltage. A second feedback input terminal may be included to receive the anode terminal voltage of the light-emitting elements as a feedback signal. Such an arrangement controls the ON/OFF state of the switching element such that the anode terminal voltage does not exceed a predetermined threshold voltage. A feedback output terminal may be included of the current driving circuit which allows the cathode terminal voltage of the light-emitting elements to be input to a control circuit for the switching regulator as a feedback signal. The control circuit and the current driving circuit may be integrally provided in the form of separate semiconductor chips.
    • 控制电路可以包括从电流驱动电路接收发光元件的阴极端子电压作为反馈信号的第一反馈输入端子。 这样的布置控制开关元件的导通/截止状态,使得阴极端子电压接近预定电压。 可以包括第二反馈输入端子以将发光元件的阳极端子电压作为反馈信号。 这种布置控制开关元件的ON / OFF状态,使得阳极端子电压不超过预定阈值电压。 可以将电流驱动电路的反馈输出端子包括在内,使得将发光元件的阴极端子电压作为反馈信号输入到开关稳压器的控制电路。 控制电路和电流驱动电路可以以单独的半导体芯片的形式一体地设置。
    • 68. 发明授权
    • Boost controller capable of step-up ratio control
    • 升压控制器能够进行升压比控制
    • US07307385B2
    • 2007-12-11
    • US11083516
    • 2005-03-18
    • Isao YamamotoKyoichiro ArakiNoboru Kagemoto
    • Isao YamamotoKyoichiro ArakiNoboru Kagemoto
    • H05B37/02
    • H05B33/0884H05B33/0815
    • A charge pump circuit boosts a voltage of a battery so as to generate a drive voltage for an LED. A constant current circuit generates a constant current to feed through the LED. A monitoring circuit monitors a cathode potential of the LED, i.e., a voltage across the constant current circuit. A control circuit receives a result of monitoring from the monitoring circuit 110 and increases a step-up ratio of the charge pump circuit when the voltage across the constant current circuit drops below a minimum voltage that guarantees a constant current. The control circuit sets an externally requested constant current value in the constant current circuit. When a change from a large current to a small current is requested, the control circuit returns the step-up ratio of the charge pump circuit to 1.0.
    • 电荷泵电路提高电池的电压,以产生用于LED的驱动电压。 恒流电路产生恒流以通过LED馈电。 监视电路监视LED的阴极电位,即恒定电流电路两端的电压。 控制电路从监视电路110接收监视结果,并且当恒定电流电路两端的电压下降到保证恒定电流的最小电压时,增加电荷泵电路的升压比。 控制电路在恒流电路中设定外部请求的恒定电流值。 当要求从大电流变化到小电流时,控制电路将电荷泵电路的升压比恢复到1.0。